腐蚀
材料科学
冶金
高温腐蚀
燃烧室
温度测量
燃烧
化学
量子力学
物理
有机化学
作者
Vinay Deodeshmukh,Shashank Srivastava
摘要
Abstract Hot corrosion found in a gas turbine engine environment is typically simulated using either a burner-rig or two-zone Dean-rig set up. In this paper, hot corrosion behavior of various wrought alloys was studied by the burner-rig test method, while examining in detail the effects of exposure duration (200h and 1000h) and variations in salt concentration (5 ppm and 50 ppm). It was found that the burner-rig testing is extremely sensitive to exposure duration and the salt concentration, specifically for the alloys that are susceptible to catastrophic hot corrosion. In the most aggressive 1000h burner-rig tests containing 50 ppm salt concentration, R30188, N06230, and N06617 alloys were resistant to hot corrosion, whereas N07214, N06625, N06002, N06635, R30605, R50556, R30155, N08810, N06601, S31000, and R80330 alloys were susceptible to catastrophic hot corrosion. An attempt was made to compare burner-rig and two-zone Dean-rig hot corrosion tests by studying selected alloys. A comparative hot corrosion evaluation from the two test methods revealed a discernable difference between the magnitudes of corrosion attack; however, the nature of hot corrosion attack and the alloy rankings were found to be quite similar.
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